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    • 1. 发明授权
    • Cellular terminal location using GPS signals in the cellular band
    • US06236359B1
    • 2001-05-22
    • US09078444
    • 1998-05-14
    • J. Michael WattersLeo StrawczynskiDavid G. Steer
    • J. Michael WattersLeo StrawczynskiDavid G. Steer
    • G01S120
    • G01S5/14G01S19/07G01S19/11G01S19/35G01S19/46G01S19/48G01S2205/008
    • Aspects of global positioning system (GPS) technology and cellular technology are combined in order to provide an effective and efficient position location system. In a first aspect of the invention, a cellular network is utilized to collect differential GPS error correction data, which is forwarded to a mobile terminal over the cellular network. The mobile terminal receives this data, along with GPS pseudoranges using a GPS receiver, and calculates its position using this information. According to a second aspect, when the requisite number of GPS satellites are not in view of the mobile terminal, then a GPS pseudosatellite signal, broadcast from a base station of the cellular network, is received by the mobile terminal and processed as a substitute for the missing GPS satellite signal. A third aspect involves calculating position using GPS when the requisite number of GPS satellites are in view of a GPS receiver, but when the requisite number of GPS satellites are not in view of the GPS receiver, then position is calculated using the cellular network infrastructure. When the requisite number of GPS satellites come back into view of the GPS receiver, then position is again calculated using GPS. A fourth aspect involves using cellular signals already being transmitted from base stations to terminals in a cellular network to calculate a round trip delay, from which a distance calculation between the base station and the terminal can be made. This distance calculation substitutes for a missing GPS satellite signal.
    • 2. 发明授权
    • Combining GPS with TOA/TDOA of cellular signals to locate terminal
    • 将GPS与蜂窝信号的TOA / TDOA相结合,定位终端
    • US5982324A
    • 1999-11-09
    • US078558
    • 1998-05-14
    • J. Michael WattersLeo StrawczynskiDavid G. Steer
    • J. Michael WattersLeo StrawczynskiDavid G. Steer
    • G01S1/00G01S5/00G01S5/14G01S19/06G01S19/25G01S5/02H04B7/185
    • G01S19/41G01S19/11G01S19/34G01S19/46G01S5/009G01S2205/008H03J2200/11
    • Aspects of global positioning system (GPS) technology and cellular technology are combined in order to provide an effective and efficient position location system. In a first aspect of the invention, a cellular network is utilized to collect differential GPS error correction data, which is forwarded to a mobile terminal over the cellular network. The mobile terminal receives this data, along with GPS pseudoranges using a GPS receiver, and calculates its position using this information. According to a second aspect, when the requisite number of GPS satellites are not in view of the mobile terminal, then a GPS pseudosatellite signal, broadcast from a base station of the cellular network, is received by the mobile terminal and processed as a substitute for the missing GPS satellite signal. A third aspect involves calculating position using GPS when the requisite number of GPS satellites are in view of a GPS receiver, but when the requisite number of GPS satellites are not in view of the GPS receiver, then position is calculated using the cellular network infrastructure. When the requisite number of GPS satellites come back into view of the GPS receiver, then position is again calculated using GPS. A fourth aspect involves using cellular signals already being transmitted from base stations to terminals in a cellular network to calculate a round trip delay, from which a distance calculation between the base station and the terminal can be made. This distance calculation substitutes for a missing GPS satellite signal.
    • 结合全球定位系统(GPS)技术和蜂窝技术的方面,以提供有效和高效的位置定位系统。 在本发明的第一方面,蜂窝网络用于收集通过蜂窝网络转发到移动终端的差分GPS误差校正数据。 移动终端使用GPS接收机连同GPS伪距接收该数据,并使用该信息来计算其位置。 根据第二方面,当GPS卫星的必需数量不在移动终端时,则由蜂窝网络的基站广播的GPS伪卫星信号被移动终端接收并被处理为 缺少GPS卫星信号。 第三方面涉及当GPS卫星的所需数量是GPS接收机时,使用GPS计算位置,但是当GPS卫星的必要数量不在GPS接收机时,则使用蜂窝网络基础设施来计算位置。 当必要数量的GPS卫星重新看到GPS接收机时,再次使用GPS计算位置。 第四方面涉及使用已经从基站向蜂窝网络中的终端发送的蜂窝信号来计算往返延迟,从而可以进行基站与终端之间的距离计算。 该距离计算代替丢失的GPS卫星信号。
    • 3. 发明授权
    • GPS and cellular system interworking
    • GPS和蜂窝系统互通
    • US06249245B1
    • 2001-06-19
    • US09078325
    • 1998-05-14
    • J. Michael WattersLeo StrawczynskiDavid G. Steer
    • J. Michael WattersLeo StrawczynskiDavid G. Steer
    • G01S510
    • G01S5/0027G01S5/009G01S19/41G01S2205/008
    • Aspects of global positioning system (GPS) technology and cellular technology are combined in order to provide an effective and efficient position location system. In a first aspect of the invention, a cellular network is utilized to collect differential GPS error correction data, which is forwarded to a mobile terminal over the cellular network. The mobile terminal receives this data, along with GPS pseudoranges using a GPS receiver, and calculates its position using this information. According to a second aspect, when the requisite number of GPS satellites are not in view of the mobile terminal, then a GPS pseudosatellite signal, broadcast from a base station of the cellular network, is received by the mobile terminal and processed as a substitute for the missing GPS satellite signal. A third aspect involves calculating position using GPS when the requisite number of GPS satellites are in view of a GPS receiver, but when the requisite number of GPS satellites are not in view of the GPS receiver, then position is calculated using the cellular network infrastructure. When the requisite number of GPS satellites come back into view of the GPS receiver, then position is again calculated using GPS. A fourth aspect involves using cellular signals already being transmitted from base stations to terminals in a cellular network to calculate a round trip delay, from which a distance calculation between the base station and the terminal can be made. This distance calculation substitutes for a missing GPS satellite signal.
    • 结合全球定位系统(GPS)技术和蜂窝技术的方面,以提供有效和高效的位置定位系统。 在本发明的第一方面,蜂窝网络用于收集通过蜂窝网络转发到移动终端的差分GPS误差校正数据。 移动终端使用GPS接收机连同GPS伪距接收该数据,并使用该信息来计算其位置。 根据第二方面,当GPS卫星的必需数量不在移动终端时,则由蜂窝网络的基站广播的GPS伪卫星信号被移动终端接收并被处理为 缺少GPS卫星信号。 第三方面涉及当GPS卫星的所需数量是GPS接收机时,使用GPS计算位置,但是当GPS卫星的必要数量不在GPS接收机时,则使用蜂窝网络基础设施来计算位置。 当必要数量的GPS卫星重新看到GPS接收机时,再次使用GPS计算位置。 第四方面涉及使用已经从基站向蜂窝网络中的终端发送的蜂窝信号来计算往返延迟,从而可以进行基站与终端之间的距离计算。 该距离计算代替丢失的GPS卫星信号。
    • 10. 发明授权
    • Method and apparatus for improving dual-polarization optical communication performance
    • 改善双极化光通信性能的方法和装置
    • US07894724B2
    • 2011-02-22
    • US11094396
    • 2005-03-31
    • Chandra BontuLeo Strawczynski
    • Chandra BontuLeo Strawczynski
    • H04B10/00
    • H04J14/06H04B10/2572
    • A method and system for averaging the effects of polarization distortions across a multitude of transmitted data streams in a dual polarization multiplexed optical communications system. Data streams are interleaved amongst each other in accordance with a predetermined pattern. The interleaved data streams are symbol mapped and modulated to provide a pair of optical signals. The pair of optical signals are orthogonally polarized, and multiplexed for transmission across an optical fiber. A receiver circuit receives the transmitted signal and extracts the interleaved data streams. The interleaved data streams are de-interleaved to generate the original data streams. While the data streams can be interleaved and transmitted via a single wavelength optical signal, the data streams can be interleaved and transmitted over two or more different wavelength optical signals to further mitigate the effects of polarization distortions.
    • 一种用于在双极化复用光通信系统中对多个传输数据流之间的偏振失真的影响进行平均的方法和系统。 数据流根据预定模式彼此交错。 交织的数据流被符号映射和调制以提供一对光信号。 这对光信号被正交极化,并被多路复用以在光纤之间传输。 接收机电路接收发送的信号并提取交织的数据流。 交织的数据流被解交织以产生原始数据流。 虽然数据流可以通过单波长光信号进行交织和传输,但数据流可以通过两个或多个不同波长的光信号进行交织和传输,以进一步减轻极化失真的影响。